Shi Guangping, Luan Lu, Zhu Guofan, Zeng Zhaoyang, Zheng Jie, Shi Yue, Sun Bo, Jiang Yuji
State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences, Nanjing, China.
University of Chinese Academy of Sciences, Beijing, China.
Front Microbiol. 2023 May 12;14:1155088. doi: 10.3389/fmicb.2023.1155088. eCollection 2023.
The process of carbon (C) sequestration plays an important role in soil fertility and productivity, yet most studies have focused on the individual role of the bacterial community. However, an in-depth mechanistic understanding of how soil nematodes interact with the bacterial community to regulate soil C accumulation is still lacking. We conducted a 10-year field experiment to explore the nematode and bacterial communities and determine the influence of nematode-bacteria interactions on C mineralization, microbial metabolic quotient (CO), and carbon use efficiency (CUE) under the organic material amendments, including chemical fertilizers with straw (NS), chemical fertilizers with straw and pig manure (NSM), and chemical fertilizer with straw biochar (NB). Here, our results showed the abundance of bacterial and nematode communities was significantly higher under NS, NSM, and NB treatments than under chemical fertilizers (N) treatment, with the highest abundance under the NSM treatment. The enrichment index and functional dispersion index were significantly higher under NSM treatment than under N, NS, and NB treatments, while the channel index followed the opposite pattern. Structural equation modeling indicated that the potential predation pressure induced by nematodes may improve bacterial abundance, with positive cascading effects on C sequestration. Collectively, our study highlights the functional importance of nematode-microorganism interactions in mediating C dynamics under organic material amendments.
碳固存过程在土壤肥力和生产力中起着重要作用,但大多数研究都集中在细菌群落的个体作用上。然而,目前仍缺乏对土壤线虫如何与细菌群落相互作用以调节土壤碳积累的深入机制理解。我们进行了一项为期10年的田间试验,以探究线虫和细菌群落,并确定在有机物料改良措施下,包括秸秆化肥(NS)、秸秆猪粪化肥(NSM)和秸秆生物炭化肥(NB),线虫 - 细菌相互作用对碳矿化、微生物代谢商(CO)和碳利用效率(CUE)的影响。在此,我们的结果表明,NS、NSM和NB处理下细菌和线虫群落的丰度显著高于化肥(N)处理,其中NSM处理下的丰度最高。NSM处理下的富集指数和功能离散指数显著高于N、NS和NB处理,而通道指数则呈现相反的模式。结构方程模型表明,线虫诱导的潜在捕食压力可能提高细菌丰度,对碳固存产生积极的级联效应。总体而言,我们的研究突出了线虫 - 微生物相互作用在有机物料改良措施下介导碳动态中的功能重要性。